Analyzing the Bioactive Properties and Volatile Profiles Characteristics of Opuntia dillenii (Ker Gawl.) Haw: Exploring its Potential for Pharmacological Applications

Author:

El Hassania Loukili12,Mounime Kadi3,Elbouzidi Amine14,Taibi Mohamed45,Mohamed Chebaibi6,Abdelkhaleq Legssyer3,Mohammed Ramdani2,Naceiri Mrabti Hanae7,Zengin Gokhan8ORCID,Addi Mohamed4,Fauconnier Marie Laure9

Affiliation:

1. Euro-Mediterranean University of Fez (UEMF) BP. 15 Fez 30070 Morocco

2. Laboratory of Applied Chemistry & Environment Faculty of Sciences University Mohammed 1st Bd. Med VI B.P. 717 Oujda Morocco

3. Laboratory of Bioresources Biotechnology Ethnopharmacology and Health Faculty of Sciences University Mohammed 1st Bd. Med VI B.P. 717 Oujda Morocco

4. Laboratoire d'Amélioration des Productions Agricoles Biotechnologie et Environnement (LAPABE) Faculté des Sciences Université Mohammed Premier Oujda 60000 Morocco

5. Centre de l'Oriental des Sciences et Technologies de l'Eau et de l'Environnement (COSTEE) Université Mohammed Premier Oujda 60000 Morocco

6. Ministry of Health and Social Protection Higher Institute of Nursing Professions and Health Techniques Fez Morocco

7. High Institute of Nursing Professions and Health Techniques Casablanca Morocco

8. Department of Biology Science Faculty Selcuk University 42130 Konya Turkey

9. Laboratory of Chemistry of Natural Molecules University of Liège, Gembloux Agro-Bio Tech. 2, Passage des Déportés B-5030 Gembloux Belgium

Abstract

AbstractIn this investigation, the study focused on the chemical constitution and the antioxidative as well as anti‐inflammatory characteristics of oils and pulpy variants (Imatchan (IM), Harmocha (HA), and Aknari (AK)) sourced from O. dillenii. This inquiry encompassed both in vitro and in silico analyses. High‐performance liquid chromatography (HPLC) was employed to ascertain the phenolic constituents, while gas chromatography‐mass spectrometry (GC‐MS) methodologies. were applied to discern the volatile makeup. The appraisal of antioxidant potential was conducted via the deployment of assays such as 2,2‐diphenyl‐1‐picrylhydrazyl (DPPH), ferric reducing antioxidant power (FRAP), and ferric ion chelating (FIC) techniques. The anti‐inflammatory activity was examined using BSA and LOX. Molecular docking methods assessed the antioxidant and anti‐inflammatory properties. According to HPLC findings, the most abundant compounds detected in AKO and IMO cultivars were quercetin 3‐O‐β‐D‐glucoside followed by vanillic acid, ferulic acid and tyrolsol. Concerning headspace GC‐MS analysis E‐11‐hexadecenal and (E)‐2‐undecenal contribute to the major compounds detected in Opuntia HA, IM, and AK pulp and oil. The DPPH IC50 for AK, HA and IM were 38.41±1.54, 42.24±0.29 and 15.17±1.28 mg/mL, respectively. The FRAP IC50 capacity of AK, HA and IM was determined to be 30.23±0.6, 55.96±0.08 and 23.41±1.83 mg/mL, respectively. AK, HA and IM displayed significant FIC activity, with IC50 values of 42.75±0.63, 39.54±0.59 and 35.31±1.38 mg/mL, respectively. The AK, HA and IM O. dillenii oils were effective in their anti‐inflammatory activity. Molecular docking of O. dillenii oils phenolic compounds was conducted to determine the possible targeted proteins by the phenolic compounds in O. dillenii’s compounds. Overall, these fruits demonstrated the potential for new ingredients for culinary or pharmaceutical applications, providing value to these natural species that can flourish in arid conditions.

Publisher

Wiley

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